EP2760000A1 - Systems and methods for catching takeoff performance errors - Google Patents
Systems and methods for catching takeoff performance errors Download PDFInfo
- Publication number
- EP2760000A1 EP2760000A1 EP14150999.2A EP14150999A EP2760000A1 EP 2760000 A1 EP2760000 A1 EP 2760000A1 EP 14150999 A EP14150999 A EP 14150999A EP 2760000 A1 EP2760000 A1 EP 2760000A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- performance data
- takeoff
- takeoff performance
- entered
- error indication
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000000034 method Methods 0.000 title claims abstract description 11
- 238000010586 diagram Methods 0.000 description 2
- 239000000446 fuel Substances 0.000 description 2
- 230000005484 gravity Effects 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64D—EQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENT OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
- B64D45/00—Aircraft indicators or protectors not otherwise provided for
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G5/00—Traffic control systems for aircraft
- G08G5/50—Navigation or guidance aids
- G08G5/52—Navigation or guidance aids for take-off
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G5/00—Traffic control systems for aircraft
- G08G5/50—Navigation or guidance aids
- G08G5/55—Navigation or guidance aids for a single aircraft
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64D—EQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENT OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
- B64D45/00—Aircraft indicators or protectors not otherwise provided for
- B64D2045/0075—Adaptations for use of electronic flight bags in aircraft; Supports therefor in the cockpit
Definitions
- the present invention provides systems and methods for verifying that the flight crew has not made an error in entering takeoff flight performance data into the flight management system (FMS) using the electronic flight bag (EFB).
- the EFB includes a user interface that receives basic flight plan information and a processor.
- the EFB includes an On-board Performance Tool (OPT) that calculates takeoff performance data based on a previously entered basic flight plan and pilot entry.
- OPT On-board Performance Tool
- the processor automatically receives user-entered takeoff performance data from a flight management system (FMS) located on a host aircraft, automatically compares the OPT calculated takeoff performance data to the received takeoff performance data, and generates an entry error indication, if the comparison indicates that at least a portion of the entered takeoff performance data does not match the calculated takeoff performance data.
- An output device outputs the generated entry error indication.
- FIGURE 1 shows an aircraft 22, and an exemplary electronic flight bag (EFB) 20 that is equipped to verify that data entered by the flight crew into a flight management system (FMS) 42 are accurate.
- the EFB 20 includes a processor 28 that is in data communication with a user interface device 34 and a display 30 (e.g., airport moving map).
- the aircraft 22 includes the FMS 42, a positioning device (e.g., global positioning system (GPS)) 44 and an air data inertial reference unit (ADIRU) 46.
- the components of the aircraft 22 communicate with the EFB 20 using an aircraft interface unit 40 (e.g., Aeronautical Radio, Inc. (ARINC) 828/834).
- ARINC Aeronautical Radio, Inc.
- the processor 28 executes a takeoff performance check application 50.
- the takeoff performance check application 50 receives input from an on-board performance tool application 52 also executed by the processor 28.
- the takeoff performance check application 50 also receives takeoff performance data entered by the flight crew into the FMS 42.
- the takeoff performance check application 50 checks that the takeoff performance data entered into the FMS 42 match the takeoff performance data output from the on-board performance tool application 52.
- An error message is generated, if there exists a mismatch.
- the generated error message is presented on the display 30.
- the presented error message includes text and/or special color, highlighting, and/or flashing of an associated icon/light.
- the takeoff performance data that may be checked include:
- FIGURE 2 shows an exemplary process 80 performed by the systems shown in FIGURE 1 .
- basic flight plan information is entered into the EFB 20 via the user interface device 34.
- the entered basic flight plan information includes Zero Fuel Weight, Fuel Weight, CG, Takeoff Flaps Setting, Available Runway Length, Runway Surface Condition, Runway Elevation, Air Temperature, Wind Velocity/Direction, etc.
- weather information and runway condition information are received at the processor 28 from the corresponding sources.
- takeoff performance data are calculated by the on-board performance tool application 52, based on the entered basic flight plan information, the weather and runway condition information, and previously stored (or dynamically received from an external source) company and regulatory policies/procedures. Then, at a block 90, after manual entry of the takeoff performance data into the FMS 42, the takeoff performance check application 50 automatically compares the manually entered takeoff performance data to the calculated takeoff performance data.
- the processor 28 generates a flag for any manually entered takeoff performance data that differs from the calculated takeoff performance data.
- An indicator associated with the flag is presented to the pilot on the display 30 or on a comparable device.
- FIGURE 3 shows an exemplary screen shot of an image 100 produced by the processor 28 after execution of the takeoff performance-check application 50 and the on-board performance-tool application 52.
- the processor 28 has determined that the data generated by the on-board performance-tool application 52 do not match the comparable data entered by the flight crew into the FMS 42.
- the data in the OPT image 100 that is the auto check includes: V1; VR; V2; flap setting; weight; CG; and takeoff thrust setting (%N1).
- V1 speed shown here has been identified as having a comparison error with the pilot-entered FMS data.
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- Engineering & Computer Science (AREA)
- Aviation & Aerospace Engineering (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
- Toys (AREA)
Abstract
Description
- Takeoff performance, as currently practiced in the air transport industry involves a series of steps, many of which involve manual crew input. In addition, the primary means of catching errors in this process typically relies on manual cross-checks between the crew.
- Many airlines are now using electronic flight bags and/or laptop computers to replace the paper performance data that has been traditionally used. These devices typically host an original equipment manufacturer (OEM)-approved performance calculation tool that will provide the pilot with the predicted takeoff performance data. These tools typically require the manual entry of relevant aircraft and atmospheric data before the calculation can be made. The output of these calculations then has to be manually transferred by the pilots into the flight management system (FMS). This includes V-speeds, weight, and thrust setting. However, human error can occur in this process.
- The present invention provides systems and methods for verifying that the flight crew has not made an error in entering takeoff flight performance data into the flight management system (FMS) using the electronic flight bag (EFB). The EFB includes a user interface that receives basic flight plan information and a processor. The EFB includes an On-board Performance Tool (OPT) that calculates takeoff performance data based on a previously entered basic flight plan and pilot entry. The processor automatically receives user-entered takeoff performance data from a flight management system (FMS) located on a host aircraft, automatically compares the OPT calculated takeoff performance data to the received takeoff performance data, and generates an entry error indication, if the comparison indicates that at least a portion of the entered takeoff performance data does not match the calculated takeoff performance data. An output device outputs the generated entry error indication.
- Preferred and alternative embodiments of the present invention are described in detail below with reference to the following drawings:
-
FIGURE 1 is a block diagram of an exemplary system formed in accordance with an embodiment of the present invention; -
FIGURE 2 is a flow diagram of an exemplary process performed by and with the systems shown inFIGURE 1 ; and -
FIGURE 3 is an exemplary screen shot of an image presented on an electronic flight bag display after the process ofFIGURE 2 has been completed. -
FIGURE 1 shows anaircraft 22, and an exemplary electronic flight bag (EFB) 20 that is equipped to verify that data entered by the flight crew into a flight management system (FMS) 42 are accurate. The EFB 20 includes a processor 28 that is in data communication with auser interface device 34 and a display 30 (e.g., airport moving map). Theaircraft 22 includes the FMS 42, a positioning device (e.g., global positioning system (GPS)) 44 and an air data inertial reference unit (ADIRU) 46. The components of theaircraft 22 communicate with the EFB 20 using an aircraft interface unit 40 (e.g., Aeronautical Radio, Inc. (ARINC) 828/834). - The processor 28 executes a takeoff performance check application 50. The takeoff performance check application 50 receives input from an on-board performance tool application 52 also executed by the processor 28. The takeoff performance check application 50 also receives takeoff performance data entered by the flight crew into the FMS 42. The takeoff performance check application 50 checks that the takeoff performance data entered into the FMS 42 match the takeoff performance data output from the on-board performance tool application 52. An error message is generated, if there exists a mismatch. The generated error message is presented on the display 30. The presented error message includes text and/or special color, highlighting, and/or flashing of an associated icon/light.
- The takeoff performance data that may be checked include:
- V-speeds;
- Flap setting;
- Takeoff Thrust;
- Weight; and
- Center of Gravity (CG).
-
FIGURE 2 shows anexemplary process 80 performed by the systems shown inFIGURE 1 . First at ablock 82, basic flight plan information is entered into the EFB 20 via theuser interface device 34. The entered basic flight plan information includes Zero Fuel Weight, Fuel Weight, CG, Takeoff Flaps Setting, Available Runway Length, Runway Surface Condition, Runway Elevation, Air Temperature, Wind Velocity/Direction, etc. At ablock 86, weather information and runway condition information are received at the processor 28 from the corresponding sources. Next, at ablock 88, takeoff performance data are calculated by the on-board performance tool application 52, based on the entered basic flight plan information, the weather and runway condition information, and previously stored (or dynamically received from an external source) company and regulatory policies/procedures. Then, at ablock 90, after manual entry of the takeoff performance data into the FMS 42, the takeoff performance check application 50 automatically compares the manually entered takeoff performance data to the calculated takeoff performance data. - At a
block 92, the processor 28 generates a flag for any manually entered takeoff performance data that differs from the calculated takeoff performance data. An indicator associated with the flag is presented to the pilot on the display 30 or on a comparable device. -
FIGURE 3 shows an exemplary screen shot of animage 100 produced by the processor 28 after execution of the takeoff performance-check application 50 and the on-board performance-tool application 52. In this example, the processor 28 has determined that the data generated by the on-board performance-tool application 52 do not match the comparable data entered by the flight crew into the FMS 42. - The data in the
OPT image 100 that is the auto check includes: V1; VR; V2; flap setting; weight; CG; and takeoff thrust setting (%N1). The V1 speed shown here has been identified as having a comparison error with the pilot-entered FMS data. - While the preferred embodiment of the invention has been illustrated and described, as noted above, many changes can be made without departing from the spirit and scope of the invention. Accordingly, the scope of the invention is not limited by the disclosure of the preferred embodiment. Instead, the invention should be determined entirely by reference to the claims that follow.
- The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:
Claims (6)
- A method comprising:at a processor within an electronic flight bag (EFB),automatically receiving takeoff performance data from an On-board Performance Tool based on previously entered basic flight plan information;automatically receiving user-entered takeoff performance data from a flight management system (FMS) located on a host aircraft;automatically comparing the calculated takeoff performance data to the received takeoff performance data; andgenerating an entry error indication, if the comparison indicates that at least a portion of the entered takeoff performance data does not match the calculated takeoff performance data; andat an output device associated with the EFB,outputting the generated entry error indication.
- The method of Claim 1, further comprising:wherein the outputted on-board performance-tool image includes the outputted entry error indication.
- An electronic flight bag (EFB) apparatus comprising:a processor configured to,automatically receive takeoff performance data from an On-board Performance Tool based on a previously entered basic flight plan;automatically receive user-entered takeoff performance data from a flight management system (FMS) located on a host aircraft;automatically compare the calculated takeoff performance data to the received takeoff performance data; andgenerate an entry error indication, if the comparison indicates that at least a portion of the entered takeoff performance data does not match the calculated takeoff performance data; andan output device configured to output the generated entry error indication.
- The apparatus of Claim 3, wherein the processor is further configured to generate an on-board performance-tool image comprising the calculated takeoff performance data,wherein the output device is further configured to output the generated on-board performance-tool image,wherein the outputted on-board performance-tool image includes the outputted entry error indication.
- A system comprising:a means for automatically receiving calculated takeoff performance data, based on previously entered basic flight plan information;a means for automatically receiving user-entered takeoff performance data from a flight management system (FMS) located on a host aircraft;a means for automatically comparing the calculated takeoff performance data to the received takeoff performance data;a means for generating an entry error indication, if the comparison indicates that at least a portion of the entered takeoff performance data does not match the calculated takeoff performance data; anda means for outputting the generated entry error indication.
- The system of Claim 5, further comprising:a means for generating an on-board performance-tool image comprising the calculated takeoff performance data,wherein the means for outputting the generated entry error indication is further configured to output the entry error indication with the generated on-board performance-tool image.
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13/751,831 US9061770B2 (en) | 2013-01-28 | 2013-01-28 | Electronic flight bag systems and methods for verifying correct takeoff performance data entry |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2760000A1 true EP2760000A1 (en) | 2014-07-30 |
| EP2760000B1 EP2760000B1 (en) | 2015-10-28 |
Family
ID=50068790
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14150999.2A Not-in-force EP2760000B1 (en) | 2013-01-28 | 2014-01-13 | Systems and methods for catching takeoff performance errors |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US9061770B2 (en) |
| EP (1) | EP2760000B1 (en) |
| CN (1) | CN103971545B (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105096663A (en) * | 2015-08-04 | 2015-11-25 | 中国商用飞机有限责任公司 | Automatic takeoff and approach reference system and method |
| EP3124384A1 (en) * | 2015-07-28 | 2017-02-01 | Honeywell International Inc. | Touchscreen-enabled electronic devices and methods providing pilot handwriting interface for flight deck systems |
| EP3509273A1 (en) * | 2018-01-08 | 2019-07-10 | Honeywell International Inc. | Data transfer between application and vehicle management system |
Families Citing this family (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9665345B2 (en) * | 2014-07-29 | 2017-05-30 | Honeywell International Inc. | Flight deck multifunction control display unit with voice commands |
| US9710145B2 (en) | 2014-09-03 | 2017-07-18 | University Of Malta | Human machine interface device for aircraft |
| US10162514B2 (en) | 2015-09-15 | 2018-12-25 | Rockwell Collins, Inc. | Large display format touch gesture interface |
| US9824513B2 (en) | 2016-04-14 | 2017-11-21 | United Airlines, Inc. | Method of detecting elevator tab failure |
| FR3053780B1 (en) * | 2016-07-07 | 2018-07-06 | Thales | APPARATUS AND METHOD FOR CALCULATING NAVIGATION PERFORMANCE PREDICTION |
| FR3053779B1 (en) * | 2016-07-07 | 2018-06-29 | Thales | APPARATUS AND METHOD FOR CALCULATING PREDICTION OF ESTIMATED NAVIGATION PERFORMANCE |
| US10991255B2 (en) | 2018-04-05 | 2021-04-27 | Ge Aviation Systems Llc | Providing an open interface to a flight management system |
| US11783714B2 (en) | 2019-11-13 | 2023-10-10 | Ge Aviation Systems Llc | Method and system for synchronizing a flight management system with an external device |
| EP4083964A1 (en) * | 2021-04-26 | 2022-11-02 | GE Aviation Systems Limited | Method and system for validating a flight plan |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB2189448A (en) * | 1986-04-08 | 1987-10-28 | William Lewis Horsley | Balanced risk director |
| US20100030408A1 (en) * | 2008-07-31 | 2010-02-04 | Honeywell International, Inc. | Integrated incorrect take-off-setting alerting system |
| US20100094488A1 (en) * | 2008-08-26 | 2010-04-15 | Airbus Operations | Process for verifying the coherence between aircraft take-off parameters and an available runway length |
| US20100152924A1 (en) * | 2008-12-12 | 2010-06-17 | Honeywell International Inc. | Next generation electronic flight bag |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7149612B2 (en) * | 2004-01-05 | 2006-12-12 | Arinc Incorporated | System and method for monitoring and reporting aircraft quick access recorder data |
| US7769501B2 (en) * | 2004-06-23 | 2010-08-03 | The Boeing Company | User-configurable electronic flight bag |
| FR2894045B1 (en) | 2005-11-28 | 2008-02-15 | Airbus France Sas | METHOD FOR CONTROLLING TAKE-OFF OR LANDING PARAMETERS AND ASSOCIATED DEVICE |
| FR2894046B1 (en) | 2005-11-28 | 2008-02-15 | Airbus France Sas | METHOD FOR DETECTING AN INPUT ERROR OF ONE OF THE TAKE-OFF PARAMETERS IN A FLIGHT MANAGEMENT SYSTEM |
| US7529603B2 (en) | 2006-03-20 | 2009-05-05 | The Boeing Company | Integrated performance application |
| FR2901893B1 (en) * | 2006-06-06 | 2008-09-12 | Airbus France Sas | DEVICE FOR MONITORING CONTROL INFORMATION OF AN AIRCRAFT |
| CN101308609B (en) * | 2007-05-18 | 2010-11-10 | 姜廷顺 | Air traffic control system using virtual pathfinder and operational method thereof |
| US8768534B2 (en) * | 2011-11-14 | 2014-07-01 | Arinc Incorporated | Method and apparatus for using electronic flight bag (EFB) to enable flight operations quality assurance (FOQA) |
-
2013
- 2013-01-28 US US13/751,831 patent/US9061770B2/en not_active Expired - Fee Related
-
2014
- 2014-01-13 EP EP14150999.2A patent/EP2760000B1/en not_active Not-in-force
- 2014-01-27 CN CN201410039023.3A patent/CN103971545B/en not_active Expired - Fee Related
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB2189448A (en) * | 1986-04-08 | 1987-10-28 | William Lewis Horsley | Balanced risk director |
| US20100030408A1 (en) * | 2008-07-31 | 2010-02-04 | Honeywell International, Inc. | Integrated incorrect take-off-setting alerting system |
| US20100094488A1 (en) * | 2008-08-26 | 2010-04-15 | Airbus Operations | Process for verifying the coherence between aircraft take-off parameters and an available runway length |
| US20100152924A1 (en) * | 2008-12-12 | 2010-06-17 | Honeywell International Inc. | Next generation electronic flight bag |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP3124384A1 (en) * | 2015-07-28 | 2017-02-01 | Honeywell International Inc. | Touchscreen-enabled electronic devices and methods providing pilot handwriting interface for flight deck systems |
| CN105096663A (en) * | 2015-08-04 | 2015-11-25 | 中国商用飞机有限责任公司 | Automatic takeoff and approach reference system and method |
| EP3509273A1 (en) * | 2018-01-08 | 2019-07-10 | Honeywell International Inc. | Data transfer between application and vehicle management system |
| US11611624B2 (en) | 2018-01-08 | 2023-03-21 | Honeywell International Inc. | Data transfer between application and vehicle management system |
Also Published As
| Publication number | Publication date |
|---|---|
| US20140214246A1 (en) | 2014-07-31 |
| EP2760000B1 (en) | 2015-10-28 |
| CN103971545B (en) | 2017-10-13 |
| US9061770B2 (en) | 2015-06-23 |
| CN103971545A (en) | 2014-08-06 |
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